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电动汽车驱动 储能系统 充电桩 微电网 可靠性分析 ★ 5.0

采用统一电能质量调节器的网状混合微电网结构

A Meshed Hybrid Microgrid Configuration With Unified Power Quality Conditioner

语言:

中文摘要

由于对可再生能源和电动汽车充电站的依赖日益增加,配电系统正经历重大变革。为在不违反电压和电流质量限值的前提下接入此类源荷,需采用电网结构重构等策略。统一电能质量调节器(UPQC)可有效调控电压与电流质量。本文提出一种基于UPQC的网状混合微电网架构,利用其直流链路构建低压直流线路,并与低压交流线路并联运行。通过电力电子变换器将负荷与分布式电源接入交直流母线。仿真与实验结果表明,该系统在恶劣工况下具有更高可靠性,并显著提升对新型直流负荷的接纳能力。

English Abstract

The distribution grid is under major transformation due to the increasing dependency on renewable energy resources (RESs) and electric vehicle (EV) charging stations. For accommodating such sources and loads in an existing ac distribution system without violating the voltage and current quality limits, various strategies, such as modifying the control methodologies and structural reconfiguration of the grids, are identified as suitable options. The power electronic converters play a significant role in integrating these features to the distribution grid. A unified power quality conditioner (UPQC) is a preferred choice to control the quality of both currents and voltages. In this article, the operation of a meshed hybrid microgrid is realized using UPQC. The dc link of UPQC is used to form a low voltage dc (LVdc) line. This LVdc line is connected parallel to the low voltage ac (LVac) lines. The loads and distribution generation units are integrated to ac and dc lines using power electronic converters. The improved performance during adverse operating conditions shows the superior reliability of the proposed system. In addition, the analysis verifies the enhanced capability of the proposed system in accommodating new dc loads to the existing system. Both simulation and experimental results are demonstrated to evaluate the performance of the proposed system.
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SunView 深度解读

该网状混合微电网架构对阳光电源ST储能系统和充电桩产品线具有重要应用价值。UPQC技术可集成到PowerTitan储能系统中,通过直流链路构建交直流混合母线,提升系统可靠性和电能质量调节能力。该方案与阳光电源构网型GFM控制技术结合,可优化微电网场景下的储能变流器设计,实现电压暂降补偿和谐波抑制功能。对充电桩业务,交直流并联架构可减少变换环节,提高直流充电效率,降低系统成本。建议在iSolarCloud平台集成该拓扑的智能诊断算法,为工商业储能和充电站一体化解决方案提供技术支撑。